纳米纤维素
材料科学
复合数
墨水池
纳米技术
3D打印
复合材料
化学工程
纤维素
工程类
作者
Ge Shi,Miao Tian,Yutong Chen,Linxin Zhong,Wenli Zhang,Zehong Chen,Shirong Sun,Ruidong Xia,Emmanuel I. Iwuoha,Xinwen Peng
标识
DOI:10.1002/adfm.202311060
摘要
Abstract Nanocellulose has become an important renewable component for composite inks, owing to its desirable physical properties, reinforcing capabilities, and tunable self‐assembly behavior. However, it is difficult to improve the rheological performance of the nanocellulose‐based composite to meet the requirement for 3D printing high resolution microarchitectures. Herein, a strategy is proposed that incorporation of amphiphilic molecular surfactant into nanocellulose gel can increase the molecular interaction via hydrophobic bonds and enhance the ink viscoelasticity. Following the design, a composite ink is formulated by adding xylan and Nonaethylene glycol monododecyl ether (C12E9) within nanocellulose gel. A new printing program is designed to achieve vertical writing of the composite ink and obtain free‐standing micropillars and microhemispheres with high resolution in dozens of micrometers. The microhemisphere on an atomic force microscope (AFM) cantilever can be used as colloidal probe. This work proves that nanocellulose composite ink is a candidate for 3D printing functional devices with special microstructures.
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